首页> 外文期刊>Plant Ecology >Soil amendment effects on the exotic annual grass Bromus tectorum L. and facilitation of its growth by the native perennial grass Hilaria jamesii (Torr.) Benth
【24h】

Soil amendment effects on the exotic annual grass Bromus tectorum L. and facilitation of its growth by the native perennial grass Hilaria jamesii (Torr.) Benth

机译:土壤改良剂对外来一年生禾草Bromus tectorum L.的影响以及原生多年生草Hilaria jamesii(Torr。)Benth对其生长的促进作用

获取原文
获取原文并翻译 | 示例
           

摘要

Greenhouse experiments were undertaken to identify soil factors that curtail growth of the exotic annual grass Bromus tectorum L. (cheatgrass) without significantly inhibiting growth of native perennial grasses (here represented by Hilaria jamesii [Torr.] Benth). We grew B. tectorum and H. jamesii alone (monoculture pots) and together (combination pots) in soil treatments that manipulated levels of soil phosphorus, potassium, and sodium. Hilaria jamesii showed no decline when its aboveground biomass in any of the applied treatments was compared to the control in either the monoculture or combination pots. Monoculture pots of B. tectorum showed a decline in aboveground biomass with the addition of Na2HPO4 and K2HPO4. Interestingly, in pots where H. jamesii was present, the negative effect of these treatments was ameliorated. Whereas the presence of B. tectorum generally decreased the aboveground biomass of H. jamesii (comparing aboveground biomass in monoculture versus combination pots), the presence of H. jamesii resulted in an enhancement of B. tectorum aboveground biomass by up to 900%. We hypothesize that B. tectorum was able to obtain resources from H. jamesii, an action that benefited B. tectorum while generally harming H. jamesii. Possible ways resources may be gained by B. tectorum from native perennial grasses include (1) B. tectorum is protected from salt stress by native plants or associated soil biota; (2) when B. tectorum is grown with H. jamesii, the native soil biota is altered in a way that favors B. tectorum growth, including B. tectorum tapping into the mycorrhizal network of native plants and obtaining resources from them; (3) B. tectorum can take advantage of root exudates from native plants, including water and nutrients released by natives via hydraulic redistribution; and (4) B. tectorum is able to utilize some combination of the above mechanisms. In summary, land managers may find adding soil treatments can temporarily suppress B. tectorum and enhance the establishment of native plants. However, the extirpation of B. tectorum is unlikely, as many native grasses are likely to facilitate its growth.
机译:进行了温室试验,以鉴定可抑制外来一年生无芒雀麦(Cheatgrass)的生长的土壤因素,而不会显着抑制原生多年生草的生长(此处以Hilaria jamesii [Torr。] Benth为代表)。我们在控制土壤磷,钾和钠水平的土壤处理中单独种植了牛油门氏菌和詹姆氏嗜血杆菌(单一栽培盆),并一起种植了(组合盆)。当在任何施用的处理中将其在地上的生物量与在单一栽培或组合盆中的对照进行比较时,Hilaria jamesii都没有显示出下降。添加Na2 HPO4 和K2 HPO4 后,牛油菌的单培养罐的地上生物量下降。有趣的是,在存在詹姆氏梭菌的罐中这些治疗的负面影响得到改善。牛油菌的存在通常会降低詹姆士氏杆菌的地上生物量(与单盆栽和组合盆栽相比,地上生物量),但詹姆士氏菌的存在会导致金缕梅的地上生物量增加多达900%。我们假设,B。tectorum能够从James H. jamesii中获得资源,这一行动有益于B. tectorum,同时通常会损害James H. jamesii。鹤望兰可以从天然多年生草中获取资源的可能方式包括:(1)鹤望兰被天然植物或相关的土壤生物区系免受盐胁迫; (2)当鹤望兰与詹姆氏杆菌一起生长时,天然土壤生物群以有利于鹤望兰生长的方式发生改变,包括鹤望兰进入原生植物的菌根网络并从中获取资源; (3)鹤望兰可以利用来自本地植物的根系分泌物,包括水和本地人通过水力再分配而释放的养分; (4)胸腺能够利用上述机制的某种组合。总而言之,土地管理人员可能会发现,增加土壤处理可以暂时抑制番茄变种并增强本地植物的生长。然而,由于许多本地草很可能会促进其生长,因此不可能灭活链霉菌。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号